2020
DOI: 10.1002/anie.202003512
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Polypyridine‐Based Helical Amide Foldamer Channels: Rapid Transport of Water and Protons with High Ion Rejection

Abstract: Synthetic strategies that enable rapid construction of covalent organic nanotubes with an angstrom‐scale tubular pore remain scarcely reported. Reported here is a remarkably simple and mild one‐pot polymerization protocol, employing POCl3 as the polymerization agent. This protocol efficiently generates polypyridine amide foldamer‐based covalent organic nanotubes with a 2.8 nm length at a yield of 50 %. Trapping single‐file water chains in the 2.8 Å tubular cavity, rich in hydrogen‐bond donors and acceptors, th… Show more

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Cited by 57 publications
(81 citation statements)
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“…By tuning the backbones, their polypyridine-based aquafoldamer was able to transport water at a rate of 1.6 Â 10 9 water molecules per second (Fig. 4e, e2) (Shen et al, 2020a). Their latest aquafoldamer channel expanded the pore volume by 20% and achieved a permeability of~3 Â 10 9 water molecules per second (Fig.…”
Section: Artificial Water Channelsmentioning
confidence: 98%
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“…By tuning the backbones, their polypyridine-based aquafoldamer was able to transport water at a rate of 1.6 Â 10 9 water molecules per second (Fig. 4e, e2) (Shen et al, 2020a). Their latest aquafoldamer channel expanded the pore volume by 20% and achieved a permeability of~3 Â 10 9 water molecules per second (Fig.…”
Section: Artificial Water Channelsmentioning
confidence: 98%
“…4d) by Hou group (Hu et al, 2012;Chen et al, 2013;Shen et al, 2015Shen et al, , 2018Li et al, 2019a), aquafoldamer channels by Zeng group (Fig. 4e) (Zhao et al, 2012a(Zhao et al, , 2014aHuo and Zeng, 2016;Shen et al, 2020aShen et al, , 2020b and macrocyclic channels by Gong group (Fig. 4f) (Zhou et al, 2012) are the representative examples.…”
Section: Artificial Water Channelsmentioning
confidence: 98%
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